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Effect of Contraction Parameters on Swing Support During Walking Using Wireless Pneumatic Artificial Muscle Driver: A Preliminary Study

机译:无线气动人工肌肉驱动器在行走过程中收缩参数对摆动支撑的影响:初步研究

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We developed wireless pneumatic artificial muscle (PAM) driver that can control delay before contraction starts, and duration of contraction through GUI of an application running on a smartphone. The purpose of this study is to evaluate the effect of these two parameters on the joint motion in the swing phase for realizing optimal swing support. The PAMs were placed above the left hip joint in order to support the left hip flexion in the swing phase. Pressure sensor was placed under the right heel for detecting the heel contact that triggers the activation of the PAMs. Subjects walked with the support under different contraction parameters. The experimental result clearly demonstrated that the hip flexion angle in the swing phase increased in all subjects, although there was individual difference in the optimal delay between heel contact and start of the PAM contraction. In addition, the variability of the hip flexion was decreased, while the hip flexion angular velocity and the peak value of the knee flexion angle were increased by the swing support for the hip joint under the optimal delay parameter. The results of this pilot study suggested that leg swing could be instantaneously modified by the support of PAMs and the optimal parameter for realizing the most effective support differed among subjects. Our wireless PAM driver enables the most effective walking support depending on the physical ability of the patient by its functionality to adjust the contraction parameters.
机译:我们开发了无线气动人造肌肉(PAM)驱动程序,该驱动程序可以控制在智能手机上运行的应用程序的GUI开始收缩之前的延迟以及收缩的持续时间。这项研究的目的是评估这两个参数对摆动阶段关节运动的影响,以实现最佳的摆动支撑。将PAM放置在左髋关节上方,以在挥杆阶段支撑左髋屈曲。将压力传感器放置在右脚后跟下方,以检测触发PAM激活的脚后跟接触。在不同的收缩参数下,受试者在支撑下行走。实验结果清楚地表明,尽管在脚跟接触和PAM收缩开始之间的最佳延迟之间存在个体差异,但所有受试者在摆动阶段的髋部屈曲角度均增加。另外,在最佳延迟参数下,通过对髋关节的摆动支撑,降低了髋屈曲的可变性,而增加了髋屈曲角速度和膝盖屈曲角的峰值。这项初步研究的结果表明,PAM的支持可以立即改变腿部摆动,而实现最有效支持的最佳参数因受试者而异。我们的无线PAM驱动程序通过调节收缩参数的功能来根据患者的身体能力提供最有效的步行支持。

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